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Environmental assessment of the near-net-shape electrochemical metallisation process and the Kroll-electron beam melting process for titanium manufacture

机译:近净形电化学金属化工艺的环境评估及钛制造的克尔电子束熔化工艺

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摘要

The enforcement of environmental policies, in recent years, has become one of the major driving forces for industrial upgrading. Therefore, this study is focused on the evaluation of the environmental impact of a newly proposed titanium additive manufacturing process, including its in-depth comparison with the conventional method. This new method, referred to as near-net-shape electrochemical metallisation, is based on the in situ metallisation (via the FFC-Cambridge process) of 3D-printed titanium oxide precursors (using direct ink writing process). In order to evaluate the main contributors to the environmental damage and to compare them with the conventional route for titanium manufacturing, the gate-to-gate life cycle assessment has been conducted following the established international standards. From this, the main contributors within the near-net-shape electrochemical metallisation process were identified to be electricity and synthetic rutile, with medium impacts from argon and nickel. It was found that major impacts were challenging to be reduced without affecting the properties of the final product. However, the medium impacts can theoretically be modified, yielding potential improvements in the sustainability of the process by 10%. When compared to the conventional route (consisting of the Kroll process, Free fall gas atomisation and electron beam melting), the end point results demonstrated that, by adopting the near-net-shape electrochemical metallisation process, the overall impact of titanium fabrication was dramatically reduced. Specifically, an average reduction of 68% for the ecosystem, human health and resources was observed.
机译:近年来,环境政策的执行已成为产业升级的主要推动力之一。因此,本研究专注于评估新提出的钛添加剂制造方法的环境影响,包括与常规方法的深入比较。这种新方法称为近净形状电化学金属化基于3D印刷钛氧化钛前体的原位金属化(通过FFC-Cambridge方法)(使用直接墨水写入过程)。为了评估环境损坏的主要贡献者并将它们与钛制造的常规路线进行比较,则在既定的国际标准之后,已经进行了栅极到浇口寿命周期评估。由此,鉴定了近净形状电化学金属化过程中的主要贡献者是电力和合成金红石,中等影响来自氩和镍。结果发现,在不影响最终产品的性质的情况下,重大影响是挑战。然而,理论上可以改性中等冲击,从过程的可持续性提高10%。与传统路线(由kroll工艺组成,自由落体气体雾化和电子束熔化)相比,终点结果表明,通过采用近净形电化学金属化过程,钛制造的总体影响显着减少。具体而言,观察到生态系统,人类健康和资源的平均降低68%。

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